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An effective forced islanding and load shedding scheme to prevent blackout

机译:一个有效的强制孤岛和减载方案,以防止停电

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Blackouts in large interconnected power system can cause damage to equipment of power plants, interruption of production cycles, and great economic losses. In order to avoid these blackouts from occurring in the power system, an effective forced islanding scheme with a suitable load shedding scheme can be used. This paper proposes an algorithm that identifies the risk during an outage and forcefully splits the system into predefined islands to prevent the propagation of cascading failures across a transmission network and thereby reducing the possibility of a large-scale blackout. The scheme makes use of DC load flow studies and sensitivity factors, such as Line Outage Distribution Factor (LODF) and Generation Shift Factors (GSF), to calculate the overloads occurring due to the outage. For each outage, the forced islands to be formed are predefined. After splitting the system into islands, the islands are analyzed for stability. If they are found to be unstable, then an under-voltage load shedding scheme is adopted to bring the system back to stability. The proposed work is carried out on a sample 6 bus system using MATLAB program.
机译:大型互连电源系统中的停电可能会损坏发电厂的设备,中断生产周期并造成巨大的经济损失。为了避免在电力系统中发生这些停电,可以使用具有合适的减载方案的有效的强制孤岛方案。本文提出了一种算法,该算法可识别中断期间的风险,并将系统强行拆分为预定义的孤岛,以防止级联故障在传输网络中传播,从而减少大规模停电的可能性。该方案利用直流潮流研究和敏感度因素(例如线路中断分布因子(LODF)和发电偏移因子(GSF))来计算由于中断而产生的过载。对于每次中断,要形成的强制岛都是预定义的。将系统分成多个岛后,将对这些岛进行稳定性分析。如果发现它们不稳定,则采用欠压减载方案使系统恢复稳定。拟议的工作是在使用MATLAB程序的示例6总线系统上进行的。

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